| Literature DB >> 29409622 |
Eric B Weston1, Mina Alizadeh2, Gregory G Knapik2, Xueke Wang3, William S Marras2.
Abstract
The objective of this study was to investigate biomechanical loading to the low back as a result of wearing an exoskeletal intervention designed to assist in occupational work. Twelve subjects simulated the use of two powered hand tools with and without the use of a Steadicam vest with an articulation tool support arm in a laboratory environment. Dependent measures of peak and mean muscle forces in ten trunk muscles and peak and mean spinal loads were examined utilizing a dynamic electromyography-assisted spine model. The exoskeletal device increased both peak and mean muscle forces in the torso extensor muscles (p < 0.001). Peak and mean compressive spinal loads were also increased up to 52.5% and 56.8%, respectively, for the exoskeleton condition relative to the control condition (p < 0.001). The results of this study highlight the need to design exoskeletal interventions while anticipating how mechanical loads might be shifted or transferred with their use.Entities:
Keywords: Ergonomic intervention; Hand tool; Wearable
Mesh:
Year: 2017 PMID: 29409622 DOI: 10.1016/j.apergo.2017.11.006
Source DB: PubMed Journal: Appl Ergon ISSN: 0003-6870 Impact factor: 3.661